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A Facile Process for Surface Modification with Lithium Ion Conducting Material of Li2TiF6 for LiMn2O4 in Lithium Ion Batteries
Min-Kun Kim, Jin Kim, Seung-Ho Yu, Junyoung Mun, Yung-Eun Sung
J. Electrochem. Sci. Technol. 2019;10(2):223-230.   Published online April 1, 2019
DOI: https://doi.org/10.5229/JECST.2019.10.2.223

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Controlled Surface Modification of LiMn1.5Ni0.5O4 Spinel Cathode Materials for Lithium-Ion Batteries
ECS Meeting Abstracts. 2011;MA2011-02(7):398-398   Crossref logo
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Synthesis of LiMn2O4 Cathode Material for Lithium Ion Batteries By Solid State Process
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A Facile Segregation Process and Restoration of LiMn2O4 Cathode Material From Spent Lithium-Ion Batteries
Journal of The Electrochemical Society. 2020;167(9):090510   Crossref logo
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Modification of High Potential, High Capacity Li2FeP2O7 Cathode Material for Lithium Ion Batteries
MRS Proceedings. 2012;1440:   Crossref logo
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A Layered Lithium‐Rich Li(Li0.2Ni0.15Mn0.55Co0.1)O2Cathode Material: Surface Phase Modification and Enhanced Electrochemical Properties for Lithium‐Ion Batteries
ChemElectroChem. 2019;6(5):1542-1551   Crossref logo
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Structural Modification on Lithium Host Site in Li2(Sr1-x Na x )Ti6-XNb x O14 (0≤x≤1) Anode Material for Lithium-Ion Batteries
ECS Meeting Abstracts. 2018;MA2018-02(4):296-296   Crossref logo
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Facile synthesis of Mn6.87(OH)3(VO4)3.6(V2O7)0.2 microtubes and their application as an anode material for lithium-ion batteries
RSC Advances. 2015;5(111):91441-91447   Crossref logo
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Aging Effects in Li(NixCoyMnz)O2 and LiMn2O4 Mixed Cathodes for Lithium Ion Batteries
ECS Meeting Abstracts. 2012;MA2012-01(6):173-173   Crossref logo
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ChemInform Abstract: Facile Synthesis of Mn6.87(OH)3(VO4)3.6(V2O7)0.2Microtubes and Their Application as an Anode Material for Lithium-Ion Batteries.
ChemInform. 2016;47(4):no-no   Crossref logo
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Surface-Segregated, High-Voltage Spinel LiMn1.5Ni0.5-xMxO4 (M = Cr, Fe, and Ga) Cathodes for Lithium-Ion Batteries
ECS Meeting Abstracts. 2011;MA2011-02(17):1324-1324   Crossref logo
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